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Showing 1 - 50 of 361 items for (author: arad & e)

EMDB-63669: 
Consensus map of human UHRF1 bound to mononucleosome with hemimethylated DNA at superhelical location -6.2.
Method: single particle / : Naschberger A, Baradaran R

EMDB-63670: 
The focused refinement map of the TTD-PHD domain of UHRF1 bound to a mononucleosome with hemimethylated DNA at superhelical location -6.2.
Method: single particle / : Naschberger A, Baradaran R

EMDB-63671: 
The SRA domain of human UHRF1 bound to a mononucleosome with hemimethylated DNA at superhelical location -6.2.
Method: single particle / : Naschberger A, Baradaran R

EMDB-63672: 
The RING domain of human UHRF1 bound to a mononucleosome in its pre-active state.
Method: single particle / : Naschberger A, Baradaran R

EMDB-63673: 
Human UHRF1 bound to a mononucleosome with hemimethylated DNA at superhelical location -5.6.
Method: single particle / : Naschberger A, Baradarn R

EMDB-63674: 
Human UHRF1 bound to a mononucleosome with hemimethylation at superhelical location -6.2 and a Histone H3K9me3 methylation mark.
Method: single particle / : Naschberger A, Baradaran R

EMDB-63675: 
Human UHRF1 bound to a mononucleosome with a hemimethylation site in the linker DNA.
Method: single particle / : Naschberger A, Baradaran R

EMDB-63676: 
UHRF1 bound to a mononucleosome in its pre-active state, with the RING domain bound to the SRA domain.
Method: single particle / : Naschberger A, Baradaran R, Sayed A, Fischle W

EMDB-63677: 
The activated state of human UHRF1 bound to a mononucleosome, with the finger loop ordered and linker 4 disordered.
Method: single particle / : Naschberger A, Baradaran R, Sayed A, Fischle W

PDB-9m76: 
UHRF1 bound to a mononucleosome in its pre-active state, with the RING domain bound to the SRA domain.
Method: single particle / : Naschberger A, Baradaran R, Sayed A, Fischle W

PDB-9m77: 
The activated state of human UHRF1 bound to a mononucleosome, with the finger loop ordered and linker 4 disordered.
Method: single particle / : Naschberger A, Baradaran R, Sayed A, Fischle W

EMDB-66639: 
In situ structure of bacterial 50S ribosomes
Method: single particle / : Wu F, Naschberger A

EMDB-66640: 
In situ structure of bacterial 50S ribosomes (CP)
Method: single particle / : Wu F, Naschberger A

EMDB-66736: 
In vitro structure of bacterial 50S ribosomes
Method: single particle / : Wu F, Naschberger A

EMDB-66749: 
In vitro structure of bacterial 50S ribosomes(CP)
Method: single particle / : Wu F, Naschberger A

EMDB-66841: 
Plunge frozen map of bacterial 50S ribosomes
Method: single particle / : Wu F, Naschberger A

EMDB-73977: 
Masked Classification of Prohibitin Complexes Showing the Prohibitin complex without an Additional Matrix-Facing Density (Class 2)
Method: subtomogram averaging / : Medina M, Rahmani H, Chang Y, Barad BA, Grotjahn DA

EMDB-73978: 
Masked Classification of Prohibitin Complexes Showing the Prohibitin complex with an Additional Matrix-Facing Density (Class 1)
Method: subtomogram averaging / : Medina M, Rahmani H, Chang Y, Barad BA, Grotjahn DA

EMDB-62028: 
Cryo-EM structure of TMPRSS2 in complex with Fab fragments of 752 mAb and 2228 mAb
Method: single particle / : Katsura K, Hisano T, Matsumoto T, Shirouzu M

PDB-9k3t: 
Cryo-EM structure of TMPRSS2 in complex with Fab fragments of 752 mAb and 2228 mAb
Method: single particle / : Katsura K, Hisano T, Matsumoto T, Shirouzu M

EMDB-72321: 
Structure of ATP synthase monomer from mouse embryonic fibroblasts
Method: subtomogram averaging / : Medina M, Chang Y, Rahmani H, Fuentes D, Barad BA, Grotjahn DA

EMDB-60854: 
Cryo-EM structure of urease from Ureaplasma parvum
Method: single particle / : Fujita J, Namba K, Wu HN, Yanagihara I

PDB-9it2: 
Cryo-EM structure of urease from Ureaplasma parvum
Method: single particle / : Fujita J, Namba K, Wu HN, Yanagihara I

EMDB-70657: 
Influenza A Virus Group 2 Hemagglutinin (H7, Strain SH13) in Complex with the Potent Small-Molecule Entry Inhibitor SA-67
Method: single particle / : Xu Y, Xu K

EMDB-70658: 
Influenza A Virus Group 2 Hemagglutinin (H7, Strain SH13) in Complex with a Potent Small-Molecule Entry Inhibitor ING-16-36
Method: single particle / : Xu Y, Xu K

PDB-9onz: 
Influenza A Virus Group 2 Hemagglutinin (H7, Strain SH13) in Complex with the Potent Small-Molecule Entry Inhibitor SA-67
Method: single particle / : Xu Y, Xu K

PDB-9oo1: 
Influenza A Virus Group 2 Hemagglutinin (H7, Strain SH13) in Complex with a Potent Small-Molecule Entry Inhibitor ING-16-36
Method: single particle / : Xu Y, Xu K

EMDB-70841: 
Human glutamine synthetase filament under turnover conditions
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

EMDB-70842: 
Human glutamine synthetase filament bound to ATP
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

EMDB-70843: 
Human glutamine synthetase decamer under turnover conditions
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

EMDB-70844: 
Human glutamine synthetase R298A decamer under turnover conditions
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

EMDB-70845: 
Human glutamine synthetase filament apo
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

PDB-9otm: 
Human glutamine synthetase filament under turnover conditions
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

PDB-9otn: 
Human glutamine synthetase filament bound to ATP
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

PDB-9oto: 
Human glutamine synthetase decamer under turnover conditions
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

PDB-9otp: 
Human glutamine synthetase R298A decamer under turnover conditions
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

PDB-9otq: 
Human glutamine synthetase filament apo
Method: single particle / : Greene ER, Muniz RS, Kollman JM, Fraser JS

EMDB-53305: 
Cryo-EM Structure of catalytic amyloids
Method: helical / : Zalk R, Kunnath SM, Arad E, Jelinek R

EMDB-38604: 
RNA polymerase II elongation complex with upstream nucleosome extracted from human nuclei
Method: single particle / : Kujirai T, Kato J, Yamamoto K, Hirai S, Negishi L, Ogasawara M, Takizawa Y, Kurumizaka H

EMDB-38607: 
RNA polymerase II elongation complex with DSIF, SPT6, and ELOF1 transcribing genomic DNA extracted from human nuclei
Method: single particle / : Kujirai T, Kato J, Yamamoto K, Hirai S, Negishi L, Ogasawara M, Takizawa Y, Kurumizaka H

EMDB-38624: 
RNA polymerase II elongation complex transcribing genomic DNA extracted from human nuclei
Method: single particle / : Kujirai T, Kato J, Yamamoto K, Hirai S, Negishi L, Ogasawara M, Takizawa Y, Kurumizaka H

EMDB-38717: 
RNA polymerase II elongation complex with downstream nucleosome extracted from human nuclei
Method: single particle / : Kujirai T, Kato J, Yamamoto K, Hirai S, Negishi L, Ogasawara M, Takizawa Y, Kurumizaka H

PDB-8xrj: 
RNA polymerase II elongation complex with upstream nucleosome extracted from human nuclei
Method: single particle / : Kujirai T, Kato J, Yamamoto K, Hirai S, Negishi L, Ogasawara M, Takizawa Y, Kurumizaka H

PDB-8xrm: 
RNA polymerase II elongation complex with DSIF, SPT6, and ELOF1 transcribing genomic DNA extracted from human nuclei
Method: single particle / : Kujirai T, Kato J, Yamamoto K, Hirai S, Negishi L, Ogasawara M, Takizawa Y, Kurumizaka H

PDB-8xso: 
RNA polymerase II elongation complex transcribing genomic DNA extracted from human nuclei
Method: single particle / : Kujirai T, Kato J, Yamamoto K, Hirai S, Negishi L, Ogasawara M, Takizawa Y, Kurumizaka H

PDB-8xvs: 
RNA polymerase II elongation complex with downstream nucleosome extracted from human nuclei
Method: single particle / : Kujirai T, Kato J, Yamamoto K, Hirai S, Negishi L, Ogasawara M, Takizawa Y, Kurumizaka H

EMDB-44771: 
Cryo-EM structure of P2X3 receptor in complex with camlipixant
Method: single particle / : Thach T, Subramanian R

EMDB-44772: 
Cryo-EM structure of P2X3 receptor in complex with ATP:Mg2+
Method: single particle / : Thach T, Subramanian R

PDB-9bpc: 
Cryo-EM structure of P2X3 receptor in complex with camlipixant
Method: single particle / : Thach T, Subramanian R
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